Low complexity hybrid precoding in finite dimensional channel for massive MIMO systems

Yulong Chen, S. Boussakta, C. Tsimenidis, J. Chambers, Shi Jin
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引用次数: 3

Abstract

Massive multiple-input multiple-output (MIMO) is an emerging technology for future wireless networks, scaling up conventional MIMO to an unprecedented number of antennas at base stations. Such a large antenna array has the potential to make the system achieve high channel capacity and spectral efficiency, but it also leads to high cost in terms of hardware complexity. In this paper, we consider a finite dimensional channel model in which finite distinct directions are applied with M angular bins. In massive multi-user MIMO systems, a hybrid precoding method is proposed to reduce the required number of radio frequency (RF) chains at the base station, employing a single antenna per mobile station. The proposed precoder is partitioned into a high-dimensional RF precoder and a low-dimensional baseband precoder. The RF precoder is designed to obtain power gain with phase-only control and the baseband precoder is designed to facilitate multi-stream processing. For realistic scenarios, we consider the situation where the RF phase control is quantized up to B bits of precision. Furthermore, an upper bound on spectral efficiency is derived with the proposed precoding scheme. The simulation results show that hybrid precoding achieves desirable performance in terms of spectral efficiency, which approaches the performance of zero-forcing precoding.
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有限维信道中大规模MIMO系统的低复杂度混合预编码
大规模多输入多输出(MIMO)是未来无线网络的一项新兴技术,将传统的MIMO扩展到基站中前所未有的天线数量。如此庞大的天线阵列有可能使系统实现高信道容量和频谱效率,但也会导致硬件复杂性方面的高成本。在本文中,我们考虑了一个有限维通道模型,在该模型中,M个角仓应用了有限个不同的方向。在大规模多用户MIMO系统中,提出了一种混合预编码方法,以减少基站所需的射频链数量,每个移动站使用单个天线。所提出的预编码器分为高维射频预编码器和低维基带预编码器。射频预编码器的设计是为了获得纯相位控制的功率增益,基带预编码器的设计是为了便于多流处理。对于实际情况,我们考虑射频相位控制量化到B位精度的情况。在此基础上,给出了该预编码方案的频谱效率上限。仿真结果表明,混合预编码在频谱效率方面取得了良好的性能,接近于零强制预编码的性能。
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